Suppr超能文献

史密斯-珀塞尔自由电子激光器分析。

Analysis of Smith-Purcell free-electron lasers.

作者信息

Kumar Vinit, Kim Kwang-Je

机构信息

Advanced Photon Source, Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Feb;73(2 Pt 2):026501. doi: 10.1103/PhysRevE.73.026501. Epub 2006 Feb 2.

Abstract

We present an analysis of the beam dynamics in a Smith-Purcell free-electron laser (FEL). In this system, an electron beam interacts resonantly with a copropagating surface electromagnetic mode near the grating surface. The surface mode arises as a singularity in the frequency dependence of the reflection matrix. Since the surface mode is confined very close to the grating surface, the interaction is significant only if the electrons are moving very close to the grating surface. The group velocity of the surface mode resonantly interacting with a low-energy electron beam is in the direction opposite to the electron beam. The Smith-Purcell FEL is therefore a backward wave oscillator in which, if the beam current exceeds a certain threshold known as start current, the optical intensity grows to saturation even if no mirrors are employed for feedback. We derive the coupled Maxwell-Lorentz equations for describing the interaction between the surface mode and the electron beam, starting from the slowly varying approximation and the singularity in the reflection matrix. In the linear regime, we derive an analytic expression for the start current and calculate the growth rate of optical power in time. The analysis is extended to the nonlinear regime by performing a one-dimensional time-dependent numerical simulation. Results of our numerical calculation compare well with the analytic calculation in the linear regime and show saturation behavior in the nonlinear regime. We find that a significant amount of power grows in the surface mode due to this interaction. Several ways to outcouple this power to freely propagating modes are discussed.

摘要

我们对史密斯-珀塞尔自由电子激光器(FEL)中的束流动力学进行了分析。在该系统中,电子束与光栅表面附近同向传播的表面电磁模式发生共振相互作用。表面模式作为反射矩阵频率依赖性中的奇点出现。由于表面模式被限制在非常靠近光栅表面的位置,只有当电子非常靠近光栅表面移动时,相互作用才会显著。与低能电子束共振相互作用的表面模式的群速度方向与电子束相反。因此,史密斯-珀塞尔自由电子激光器是一种返波振荡器,其中,如果束流超过某个称为起始电流的阈值,即使不使用镜子进行反馈,光强也会增长到饱和。我们从慢变近似和反射矩阵中的奇点出发,推导了用于描述表面模式与电子束之间相互作用的耦合麦克斯韦-洛伦兹方程。在线性区域,我们推导了起始电流的解析表达式,并计算了光功率随时间的增长率。通过进行一维时间相关的数值模拟,将分析扩展到非线性区域。我们的数值计算结果与线性区域的解析计算结果吻合良好,并在非线性区域显示出饱和行为。我们发现,由于这种相互作用,表面模式中会产生大量功率。讨论了将这种功率耦合到自由传播模式的几种方法。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验